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The Cerro Prieto IV (Mexico) Geothermal Reservoir: Pre-Exploitation Thermodynamic Conditions And Main Processes Related To Exploitation (2000-2005)

机译:塞罗普列托四世(墨西哥)地热库:开采前的热力学条件和与开采有关的主要过程(2000-2005年)

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摘要

The Cerro Prieto IV (CPIV) reservoir, located in the northeastern part of the Cerro Prieto (Mexico) geothermal field, was studied in order to define its pre-exploitation conditions and initial (2000-2005) response to exploitation. Bottomhole thermodynamic conditions were estimated by modeling heat and fluid flows using the WELLSIM program and well production data. Produced fluid chemical and isotopic data were also analyzed to investigate characteristic patterns of behavior over time, which were then compared against simulation results to obtain a conceptual model of the CP IV reservoir. According to the proposed model, two zones in the reservoir - separated by Fault H and producing fluids of different characteristics - were identified under pre-exploitation conditions. Wells in the area to the east-southeast (south block) produce very high-enthalpy fluids (>2000kJ/kg), with very low chloride (<7000mg/kg) and high CO——2 (>6%o molar) and 8D (<-94%o). In contrast, wells toward the west-northwest (north block) show moderate-enthalpy fluids (1400-1800 kj/kg), with high chloride (~12,000 mg/kg) and relatively low CO2 (<6%o molar) and 8D (<-94%?). Dilution caused by cooler water entry, boiling due to steam gain, both occurring in the north block, and steam condensation in the south block were identified as the three main reservoir processes associated with exploitation. Also, it was found that the dynamics of the CP IV reservoir is controlled by the Fault H system.
机译:研究了位于Cerro Prieto(墨西哥)地热田东北部的Cerro Prieto IV(CPIV)油藏,以便确定其开采前条件和开采初期(2000-2005)。通过使用WELLSIM程序和油井生产数据对热量和流体流动进行建模,估算了井底热力学条件。还对产生的流体化学和同位素数据进行了分析,以研究随时间变化的特征模式,然后将其与模拟结果进行比较,以获得CP IV储层的概念模型。根据所提出的模型,在开采前的条件下,确定了储层中的两个区域-被断层H分开并产出了具有不同特性的流体。东南部(南部区块)地区的油井产生的焓值很高(> 2000kJ / kg),氯化物含量很低(<7000mg / kg),CO_2(摩尔浓度> 6%)高。 8D(<-94%o)。相比之下,西北偏西(北部区块)的井显示出中等焓的流体(1400-1800 kj / kg),高氯化物(〜12,000 mg / kg)和相对较低的二氧化碳(<6%o摩尔)和8D (<-94%?)。由较冷的水进入引起的稀释,因蒸汽获得而沸腾的沸腾(均发生在北部区块)和南部区块中的蒸汽凝结被确定为与开采相关的三个主要储层过程。此外,还发现CP IV储层的动力学受断层H系统控制。

著录项

  • 来源
    《Geothermics》 |2011年第3期|p.190-198|共9页
  • 作者单位

    Institute de lnvestigaciones Etectricas, Cerencia de Geotermia, Reforma 113, Col. Palmira, 62490, Cuernavaca, Mor., Mexico;

    Institute de lnvestigaciones Etectricas, Cerencia de Geotermia, Reforma 113, Col. Palmira, 62490, Cuernavaca, Mor., Mexico;

    Institute de lnvestigaciones Etectricas, Cerencia de Geotermia, Reforma 113, Col. Palmira, 62490, Cuernavaca, Mor., Mexico;

    Comision Federal de Electricidad. Cerencia de Proyectos Ceotermoelectricos, Residencia de Estudios del Campo Geottrmico Cerro Prieto, Carretera Pascualitos Pescaderos, km 26.5,21700 Mexican, B.C., Mexico;

    Comision Federal de Electricidad. Cerencia de Proyectos Ceotermoelectricos, Residencia de Estudios del Campo Geottrmico Cerro Prieto, Carretera Pascualitos Pescaderos, km 26.5,21700 Mexican, B.C., Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    geothermal; reservoir processes; bottomhole thermodynamic conditions; reservoir exploitation; cerro prieto; mexico;

    机译:地热;储层过程;井下热力学条件;储层开发;塞罗普列托;墨西哥;
  • 入库时间 2022-08-18 00:19:52

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